Interconnected N/P co-doped carbon nanocage as high capacitance electrode material for energy storage devices

被引:0
|
作者
Lei Yang
Xiaojun He
Yuchen Wei
Honghui Bi
Feng Wei
Hongqiang Li
Changzhou Yuan
Jieshan Qiu
机构
[1] Anhui University of Technology,School of Chemistry and Chemical Engineering, Anhui Key Laboratory of Coal Clean Conversion and High Valued Utilization, Key Lab of Metallurgical Emission Reduction and Resources Recycling, Ministry of Education
[2] University of Jinan,School of Material Science and Engineering
[3] Beijing University of Chemical Technology,College of Chemical Engineering
来源
Nano Research | 2022年 / 15卷
关键词
pyrene; carbon nanocage; N/P co-doped; supercapacitor; zinc-ion hybrid supercapacitor;
D O I
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中图分类号
学科分类号
摘要
Heteroatom doping carbon materials exhibit a huge application potential for energy storage devices (ESDs). Herein, interconnected N/P co-doped carbon nanocage (NP-CNC) was synthesized from pyrene molecules by using nano-MgO as template and melamine-phytic acid supramolecular aggregate as dopant coupled with KOH activation. The as-prepared NP-CNC possesses interconnected nanocages for electron transportation and abundant micropores for ion adsorption. Moreover, co-doped N/P species in NP-CNC provide active sites and additional pseudocapacitance. Consequently, NP-CNC as electrode material for symmetric supercapacitor exhibits a high gravimetric capacitance of 435 F·g−1 at 0.05 A·g−1, high volumetric capacitance of 274 F·cm−3 at 0.032 A·cm−3, and long cycle lifespan with 96.1% capacitance retention after 50,000 cycles. Furthermore, NP-CNC as cathode for zinc-ion hybrid supercapacitor delivers satisfactory energy and power densities of 130.6 Wh·kg−1 (82.3 Wh·L−1) and 14.4 kW·kg−1 (9.1 kW·L−1). This work paves a promising approach to the preparation of high capacitance NP-CNC for ESDs.
引用
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页码:4068 / 4075
页数:7
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